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Synthesis of molecularly imprinted co-polymers for recognition of ephedrine

机译:用于识别麻黄碱的分子印迹共聚物的合成

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In the present work, an improved approach for the preparation of molecularly imprinted polymers (MIPs) was proposed. The MIPs were prepared based on terpolymer copolymerization under acidic environmental conditions at room temperature and with a solvent eluting template, using ephedrine as the template, and melamine-urea-formaldehyde (MUF) as the terpolymer and also as a functional monomer. In this preparation protocol, the cross-linker was not added. Gas chromatography and mass spectrometry (GC/ MS) were used to evaluate the adsorption properties and recognition mechanism of the ephedrine molecularly imprinted co-polymer (EMIP). The recognition property of EMIPs for ephedrine was investigated in depth with both static and dynamic methods using pseudo-ephedrine, another enantiomer of ephedrine, as the comparison compound. The EMIP's ability to bind ephedrine and pseudo-ephedrine was examined. Results showed that the EMIP had good recognition selectivity and binding affinity towards ephedrine, whereas its ability to bind pseudo-ephedrine was poor. The selectivity coefficient of EMIP for ephedrine with respect to pseudo-ephedrine is over seven. It indicated that it had a separation ability at the molecular configuration level. The solid-phase extraction (SPE) experiment showed that the EMIP was able to rebind and enrich ephedrine from the herb ephedra when used as the solid sorbent. The extraction results were compared with those of the liquid-liquid extraction (LLE), showing that the EMIP had a specific adsorption capacity for ephedrine. The amount of ephedrine extracted using SPE was 1.3 times higher than that using LLE.
机译:在目前的工作中,提出了一种改进的制备分子印迹聚合物(MIP)的方法。基于三元共聚物在室温下酸性环境条件下,在三元共聚物的共聚下,以麻黄碱为模板,三聚氰胺-脲-甲醛(MUF)作为三元共聚物,也作为功能性单体,并使用溶剂洗脱模板制备了MIP。在此制备方案中,未添加交联剂。气相色谱和质谱(GC / MS)用于评估麻黄碱分子印迹共聚物(EMIP)的吸附性能和识别机理。使用伪麻黄碱(另一种麻黄碱对映体)作为比较化合物,通过静态和动态方法深入研究了EMIP对麻黄碱的识别特性。检查了EMIP结合麻黄碱和伪麻黄碱的能力。结果表明,EMIP对麻黄碱具有良好的识别选择性和结合亲和力,而其结合伪麻黄碱的能力较弱。麻黄碱相对于伪麻黄碱的EMIP选择性系数超过7。表明其在分子构型水平上具有分离能力。固相萃取(SPE)实验表明,当用作固体吸附剂时,EMIP能够从草药麻黄中重新结合并富集麻黄碱。将提取结果与液-液提取(LLE)的结果进行了比较,表明EMIP对麻黄碱具有特定的吸附能力。使用SPE提取的麻黄碱量比使用LLE提取的麻黄碱量高1.3倍。

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